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Interleaved High Step-Up DC-DC Converter Based on Voltage Multiplier Cell and Voltage-Stacking Techniques for Renewable Energy Applications †

机译:基于电压乘法电池的交错高压直流电转换器和可再生能源应用的电压堆叠技术†

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摘要

A novel interleaved high step-up DC-DC converter based on voltage multiplier cell and voltage-stacking techniques is proposed for the power conversion in renewable energy power systems. The circuit configuration incorporates an input-parallel output-series boost converter with coupled inductors, clamp circuits and a voltage multiplier cell stacking on the output side to extend the voltage gain. The converter achieves high voltage conversion ratio without working at extreme large duty ratio. The voltage stresses on the power switches are significantly lower than the output voltage. As a result, the low-voltage-rated metal-oxide-semiconductor field-effect transistors (MOSFETs) can be employed to reduce the conduction losses and higher conversion efficiency can be expected. The interleaved operation reduces the input current ripple. The leakage inductances of the coupled inductors act on mitigating the diode reverse recovery problem. The operating principle, steady-state analysis and design guidelines of the proposed converter are presented in detail. Finally, a 1-kW prototype with 28-V input and 380-V output voltages was implemented and tested. The experimental results are presented to validate the performance of the proposed converter.
机译:提出了一种基于电压倍增电池和电压堆叠技术的新型交错的高升压DC-DC转换器,用于可再生能源电力系统中的功率转换。电路配置包括输入平行输出级升压转换器,该耦合电感器,钳位电路和堆叠在输出侧上的电压乘法器单元以延长电压增益。转换器实现高压转换比而不处于极大的占空比。电源开关上的电压应力显着低于输出电压。结果,可以采用低压额定金属氧化物 - 半导体场效应晶体管(MOSFET)以降低导电损耗,并且可以预期更高的转换效率。交织操作减少了输入电流纹波。耦合电感器的泄漏电感作用于减轻二极管反向恢复问题。详细介绍了所提出的转换器的工作原理,稳态分析和设计指南。最后,实现了一个带28 V输入和380V输出电压的1-KW原型,并进行了测试。提出了实验结果以验证所提出的转换器的性能。

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